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Physics The Physics of Everyday Phenomena

# The Physics of Everyday Phenomena Griffith • 10th Edition •

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## Ch. 01: Physics, the Fundamental Science

Introduction to Units Unit Conversions Solving Density Problems Dimensional Analysis Counting Significant Figures Operations with Significant Figures

## Ch. 03: Falling Objects and Projectile Motion

Vertical Motion and Free Fall Intro to Motion in 2D: Position & Displacement Velocity in 2D Acceleration in 2D Intro to Projectile Motion: Horizontal Launch Negative (Downward) Launch Symmetrical Launch Special Equations in Symmetrical Launches

## Ch. 04: Newton's Laws: Explaining Motion

Newton's First & Second Laws Forces & Kinematics Vertical Forces & Acceleration Vertical Equilibrium & The Normal Force Newton's Third Law & Action-Reaction Pairs Forces in Connected Systems of Objects

## Ch. 05: Circular Motion, the Planets, and Gravity

Uniform Circular Motion Period and Frequency in Uniform Circular Motion Centripetal Forces Flat Curves Banked Curves Satellite Motion: Intro Overview of Kepler's Laws Kepler's Third Law Newton's Law of Gravity Acceleration Due to Gravity Geosynchronous Orbits

## Ch. 09: The Behavior of Fluids

Density Intro to Pressure Pascal's Law & Hydraulic Lift Pressure Gauge: Barometer Pressure Gauge: U-shaped Tube Buoyancy & Buoyant Force Fluid Flow & Continuity Equation

## Ch. 11: Heat Engines and the Second Law of Thermodynamics

The Carnot Cycle Entropy and the Second Law of Thermodynamics

## Ch. 18: The Structure of the Atom

Atomic Structure Quantum Mechanics Particle-Wave Duality

## Ch. 19: The Nucleus and Nuclear Energy

Nuclear Physics Particle Physics

## Ch. 20: Relativity

Inertial Reference Frames Special Vs. Galilean Relativity Consequences of Relativity Lorentz Transformations

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